[0001] The present invention relates to the field of mechanical engineering, in particular
to engine manufacturing and can be used for preparation of diesel fuel with improved
properties.
[0002] From the prior art the method of diesel fuel treatment is known when it is heated,
homogenized and separated in centrifugal force field at fuel movement from the bottom
up in the vortex apparatus of rotor-disc type and then is finely filtered at filtering
porous partition of hydrophobic material (ref. RU 2105184 A, F02M 43/00, 1998)
[0003] To increase the level of stabilization of homogenized finely divided structure additives
on the basis of ethylene with vinylacetate copolymer solution in hydrocarbon solvent
are added to dehydrated and purified fuel, that improves the quality of fuel at storage.
But waste gases, generated in the engine at burning of thus complex-treated diesel
fuel, contain sufficient amount of toxic exhaust (including cancerogenic polyaromatic
hydrocarbons, nitrogenous compounds, carbon black).
[0004] The vortex apparatus of rotor-disc type for complex treatment of diesel fuel comprising
the case with inlet and outlet pipe connections is also known in inner cavity of which
a rotor is installed with a set of conical trays having holes round the periphery
zone (ref. RU 2054572 A, F02M 43/00, 1996). Simultaneous processes of separation and
homogenization run in said vortex apparatus, that provides creation of homogeneity
and finely divided structure of diesel fuel being treated but at that destruction
ability of the apparatus is not sufficiently high.
[0005] The object of this invention is to improve operation and ecology properties of diesel
fuel and creation of a rotor-disc vortex apparatus of open type providing effective
mechanical destruction of resinous-asphaltene compounds contained in diesel fuel.
[0006] The object is achieved by the method of complex treatment of diesel fuel including
heating, homogenization and separation in centrifugal force field in a rotor-disc
vortex apparatus and fine filtration at filtering porous partition of hydrophobic
material which is carried out according to this invention with pre-heating of fuel
in the coarse of periodic circulation in a closed circuit including a heat exchanger
and a rotor-disc apparatus of open type, and additional filtration is carried out
with a multilayer filter-reactor comprising granules of multifunctional catalyst,
alkylating aromatic compounds, and a layer of fill of powder of transitional metals
or their oxides.
[0007] At that additional filtration is carried out at temperature of fuel being treated
of 25 to 45°C and at pressure differential at filter-catalyst to 0.2 MPa, and active
carbon impregnated with salts of Na, Ca, Mg, Mn metals or rare-earth metals or high-silica
zeolite in hydrogenous form with addition of metal promoter of Cu Ba-LIBM, NaY, Co
Na Y, CaNaY type is used, and a layer of fill is made in form of a porous structure
with rectification fineness of 0.5 to 1.5 micron of powder of metals Fe, Ni, Cu, Cr,
Ag, V, W, Mo or their oxides.
[0008] It is preferred after fine filtration at the filtering porous partition of hydrophobic
material with purification fineness of 3 to 8 micron and at the multilayer filter-reactor
to heat fuel being treated and to add multifunctional (depressive, stabilizing etc)
additives on the basis of surface-active substances with subsequent cooling of treated
fuel before storage to environmental temperature.
[0009] It is desirable to use heat, extracted at cooling treated fuel, for heating diesel
fuel before the rotor-disc vortex apparatus.
[0010] This object is achieved by the vortex apparatus of rotor-disc type for complex treatment
of diesel fuel comprising case with inlet and outlet pipe connections, in inner cavity
of which a rotor is installed with a set of conical trays having holes round the periphery
zone and according to this invention the said inner cavity is connected with environment,
the conical trays are made with destruction edge in form of flanging with slots and
bends at the following correlation of geometric parameters:



where:
- D =
- diameter of the large (lower) base of the conical tray;
- d =
- diameter of the small (upper) base of the conical tray;
- H =
- height of the conical tray;
- α =
- angle between the forming and the large (lower) base of the conical tray.
[0011] Process of multifunctional catalysis at additional filtering diesel fuel being treated
provides alkylating aromatic hydrocarbons by unsaturated compounds and this, combined
with subsequent dehydrogenation, increases level of homogenization of diesel fuel
in molecular weight and hydrocarbon structure providing, to the point, molecular mixing
of diesel fuel with oxidant (oxygen). In addition preliminary mechanical destruction
in the rotor-disc vortex apparatus with simultaneous separation and subsequent fine
filtration at the filtering porous partition of hydrophobic material allows to remove
resinous-asphaltene compounds from diesel fuel being treated, that improves quality
of fuel and ecological state due to improvement of completeness burning thereof.
[0012] The drawing represents the scheme of a unit for complex treatment of diesel fuel.
[0013] The unit comprises a rotor-disc vortex apparatus of open type 1 included in a circulation
circuit jointly with a reservoir (tank) 2, a heat exchanger 3 and a circulation geared
pump 4, a transfer pump 5, a filter 6 with a filtering porous partition 7 of hydrophobic
polymer material such as polyvinylchloride fiber or polyvinylformal with purification
fineness (average transversal pore size) 3 ÷ 8 micron, a multilayer filter-reactor
8, filled with granules of multifunctional catalyst 9 alkylating aromatic compounds
and a layer 10 of fill of powder of transitional metals or their oxides forming a
porous structure with purification fineness (average transversal pore size) 0.5 ÷
1.5 micron which is located between copper grids 11 with cell size not exceeding the
size of fill powder particles. After the multilayer filter-rector 8 a system of stabilization
of diesel fuel being treated is connected comprising a mixer 12, a hopper 13 for additive
with a metering device 14, a heat exchanger- heater 15 and a heat exchanger-cooler
16 the outlet of which is connected with the exchanger (3) inlet. The unit is equipped
with locking-controlling apparatus 17 and checkout equipment 18 and 19.
[0014] A rotor-disc vortex apparatus of open type 1 comprises the a case 20 with an inlet
pipe connection 21 for fuel being treated, an outlet pipe connection 22 for treated
fuel and an outlet pipe connection 23 for drain of separated coarse-divided water-fuel
emulsion, in inner cavity of which a rotor 24 is installed with a set of conical trays
25 made with the destruction edge 26 in form of flanging with slots (27) and bends
(28) and holes (29) round the periphery zone at the following correlation of geometric
parameters:



where:
- D -
- diameter of the large (lower) base of the conical tray;
- d -
- diameter of the small (upper) base of the conical tray;
- H -
- height of the conical tray;
- α -
- angle between the forming and the large (lower) base of the conical tray.
[0015] As a variant of an optimum rotor-disc vortex apparatus the conical trays 25 have:
d = 100 mm; D = 235 mm; H = 80 mm at α = 50°, which provides effective processes of
mechanical destruction and dispersion of diesel fuel being treated simultaneously
with the processes of separation and homogenization.
[0016] Granules of activated carbon impregnated with the salts of metals Na, Ca, Mg, Mn
or rare-earth metals or high-silica zeolite in hydrogenous form with addition of metal
promoter of Cu Ba-CVM (LIBM), NaY, Co Na Y, CaNaY type can be used as a multifunctional
catalyst 9, alkylating aromatic compounds, for the multilayer filter-reactor 8, and
the layer (10) of fill of a porous structure can be made of powder of transient metals
Fe, Ni, Cr, Ag, V, W, Mo or their oxides.
[0017] The method of complex treatment of diesel fuel according to this invention is realized
as follows.
[0018] Diesel fuel being treated including rehydrated one enters the reservoir (tank) 2
and initially is circulated in a closed circuit including a heat exchanger 3 and a
rotor-disc vortex apparatus 1 of open type with a circulation geared pump 4. At that
heated to temperature of ~ 35°C diesel fuel is subject to intensive hydrodynamic and
mechanical effect at movement from the bottom up in the centrifugal force field between
conical trays 25 which provides processes of mechanical destruction of resinous-asphaltene
compounds and dispersion in the environment of sucked air with oxygen saturation simultaneously
with the processes of separation and homogenization accompanied by the drain of separated
coarse divided water-fuel emulsion, containing destruction resinous products, through
the outlet pipe connection 23. Prepared thus diesel fuel is supplied with a transfer
pump 5 from the outlet pipe connection 22 of the vortex apparatus 1 to the filter
6 where the process of fine filtration, accompanied by separation of fine divided
emulsion water and complex purification of fuel of associations of resinous substances
including formed by oxidation b- and polycyclic aromatic hydrocarbons, runs at the
filtering porous partition 7 of hydrophobic polymer material. At subsequent filtration
of diesel fuel in the multilayer filter-reactor 8, in which pressure differential
to 0.2 MPa is sustained at temperature 25 ÷ 45°C, alkylating of aromatic compounds
of hydrocarbons takes place, and at fuel movement through the layer 10 of the fill
of powder of transient metals or their oxides forming porous structure with purification
fineness 0,5 ÷ 1.5 micron which retains hard particles - products of aromatic hydrocarbon
transformation, adsorptive processes and catalytic homogeneous oxidation of aromatic
hydrocarbons with aromatic ring (benzene nucleus) opening run causing formation of
polyconjugated polymers and spatial structures which promotes improvement of quality
composition of diesel fuel. Then treated fuel with improved structure is heated in
the heat exchanger 15 and is supplied to the mixer 12 where complex (depressive, stabilizing)
additive on the basis of surface-active substances such as solution of copolymer of
ethylene with vinylacetate in hydrocarbon solvent or derivatives of olefin with low
molecular weight of Keroflux type in amount of 0.005 ÷ 0.05 mass % is added from the
hopper 13 through the metering device 14 stabilizing it, and cooling of obtained homogeneous
fine divided structure is carried out to environmental temperature in the heat exchanger-cooler
16 before filling fuel tanks or transferring for long-duration storage.
[0019] It is useful to use heat extracted at cooling in the heat exchanger-cooler 16 to
heat diesel fuel in the heat exchanger 3.
[0020] The table gives comparative indexes of starting and treated in accordance with this
invention diesel fuel.

1. A method of complex treatment of diesel fuel including heating diesel fuel, homogenization
and separation in centrifugal force field in a rotor-disc vortex apparatus and fine
filtration at a filtering porous partition of hydrophobic material, characterized in that heating of diesel fuel is carried out during the process of circulation in a closed
circuit including a heat exchanger and a rotor-disc vortex apparatus of open type
and additional filtration is carried out by a multilayer filter-reactor comprising
granules of multifunctional catalyst, alkylating aromatic compounds, and a layer of
a fill of powder of transitional metals or their oxides.
2. A method in accordance with claim 1, characterized in that additional filtration is carried out at temperature of fuel being treated 25 ÷ 45°C
and at pressure differential at a filter-reactor to 0.2 MPa, and activated carbon
impregnated with salts of metals Na, Ca, Mg, Mn or rare-earth metals or high-silica
zeolite in hydrogenous form with addition of metal promoterof Cu Ba-LIBM, NaY, Co
Na Y, CaNaY type, and a layer of fill is made in form of a porous structure with rectification
fineness 0.5 ÷ 1.5 micron of powder of metals Fe, Ni, Cu, Cr, Ag, V, W, Mo or their
oxides.
3. A method in accordance with claim 1, characterized in that after fine filtration at a filtering porous partition of hydrophobic material and
at a multilayer filter-reactor fuel being treated is heated and stabilizing additives
on the basis of surface-active substances are added with subsequent cooling of treated
fuel before storage to environmental temperature.
4. A method in accordance with claims 1, 3, characterized in that heat extracted at cooling of treated fuel is used for heating diesel fuel before
the rotor-disc vortex apparatus.
5. A vortex apparatus of rotor-disc type for complex treatment of diesel fuel comprising
a case with inlet and outlet pipe connections in inner cavity of which a rotor with
a set of conical trays with holes round the periphery zone is installed,
characterized in that the inner cavity is connected with environment, the conical trays are made with destruction
edge in form of flanging with slots and bends at the following correlation of geometric
parameters:



where:
D = diameter of the large (lower) base of the conical tray;
H = height of the conical tray;
d = diameter of the small (upper) base of the conical tray;
α = angle between the generator and the large (lower) base of the conical tray.